Soun Léna, Fix Baptiste, El Ouazzani Hasnaa, Héron Sébastien, Bardou Nathalie, Dupuis Christophe, Derelle Sophie, Jaeck Julien, Haïdar Riad, Bouchon Patrick
Opt Lett. 2021 Mar 15;46(6):1466-1469. doi: 10.1364/OL.415257.
Metasurfaces able to concentrate light at various wavelengths are promising for enhancing nonlinear interactions. In this Letter, we experimentally demonstrate infrared second-harmonic generation (SHG) by a multi-resonant nanostructure. A 100 GaAs layer embedded in a metal-insulator-metal waveguide is shown to support various localized resonances. One resonance enhances the nonlinear polarization due to the transverse magnetic (TM)-polarized pump wavelength near 3.2µ, while another is set near the TE-polarized generated wavelength (1.6µ). The measured SHG efficiency is higher than 10 for pump wavelengths ranging from 2.9 to 3.3µ, which agrees with theoretical computations. This is typically 4 orders of magnitude higher than the equivalent GaAs membrane.
能够在不同波长下聚焦光的超表面有望增强非线性相互作用。在本信函中,我们通过多共振纳米结构对红外二次谐波产生(SHG)进行了实验演示。嵌入金属 - 绝缘体 - 金属波导中的100层砷化镓被证明支持各种局域共振。一种共振增强了由于近3.2µ的横向磁(TM)极化泵浦波长引起的非线性极化,而另一种共振则设置在TE极化产生波长(1.6µ)附近。对于2.9至3.3µ范围内的泵浦波长,测得的SHG效率高于10,这与理论计算结果相符。这通常比等效的砷化镓薄膜高出4个数量级。